Kang Dong Woo, Choi Kyu Hwan, Lee Seong Jae, Park Bum Jun
Department of Chemical Engineering , Kyung Hee University , Yongin 17104 , South Korea.
Department of Polymer Engineering , The University of Suwon , Hwaseong , Gyeonggi 18323 , South Korea.
J Phys Chem Lett. 2019 Apr 18;10(8):1691-1697. doi: 10.1021/acs.jpclett.9b00232. Epub 2019 Mar 27.
Heterogeneity among particles is an inherent feature that allows nondeterministic prediction of the properties of assembled structures and materials composed of many particles. Here, we report a promising strategy to quantify the heterogeneous and anisotropic interactions between ellipsoid particles using optical laser tweezers. The configuration and separation between two particles at an oil-water interface were optically controlled, and the capillary interaction behaviors were directly observed and measured. As a result, the optimal particle configurations at energetically favorable states were obtained, and the interaction forces between the particles were identified accurately by determining the trap stiffness in the direction of major and minor axes of the particle. Visualization of the capillary field around individual particles confirmed that the capillary interactions were quadrupolar, anisotropic, and heterogeneous. The measurement method presented here can be widely used to quantify interaction fields for various types of anisotropic particles.
粒子间的异质性是一个固有特征,它使得由许多粒子组成的组装结构和材料的性质无法进行确定性预测。在此,我们报告一种利用光学激光镊子量化椭球体粒子间异质和各向异性相互作用的有前景的策略。在油水界面处两个粒子的构型和间距通过光学手段进行控制,并且直接观察和测量了毛细相互作用行为。结果,获得了能量有利状态下的最佳粒子构型,并且通过确定粒子长轴和短轴方向上的阱刚度,准确识别了粒子间的相互作用力。对单个粒子周围毛细场的可视化证实,毛细相互作用是四极的、各向异性的和异质的。这里提出的测量方法可广泛用于量化各种类型各向异性粒子的相互作用场。